Study on Porosity of Thermal-Sprayed Commercially Pure Aluminum Coating

Author:

Li Bo1,Fan Lei1,Bai Jie1,He Jinhang1,Su Jianfeng2,Wang Song3,Deng Chao3,Liu Shifeng3ORCID,Zhang Zhiqing3

Affiliation:

1. Electric Power Research Institute, Guizhou Power Grid Co., Ltd., Guiyang 550000, China

2. An Shun Power Supply Bureau, Guizhou Power Grid Co., Ltd., Anshun 561000, China

3. College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China

Abstract

Porosity is closely related to the corrosion and wear properties of a coating processed by thermal-spraying technology, and the quantitative characterization of porosity is a crucial part of the research on coating structures. The current image analysis method often uses the mechanical polishing method recommended by ISO to measure a coating porosity. This method has been proved to be an effective method for the characterization of oxide coatings. However, due to the significant differences in the physical and chemical properties between aluminum and oxides, this method may not be suitable for aluminum coatings, and a more appropriate approach needs to be explored. In this paper, the effects of three polishing technologies (mechanical polishing, argon-ion-beam polishing, and electrolytic polishing) on the porosity measurement of pure aluminum coatings were compared and studied. The research results showed that the commonly used mechanical polishing method and more advanced argon-ion-beam polishing method could not completely reveal the pore structure because SiC particles would be embedded in the pure aluminum coatings during mechanical polishing, filling large pores. Although electrolytic polishing technology had advantages in revealing the macroporous structure, it would introduce a microporous structure and oxides, which would affect the measurement of the coating porosity. The composite polishing technology (electrolytic polishing + argon-ion-beam polishing) could perfectly reveal the pore structure in the pure-aluminum coating, and the porosity of arc-sprayed aluminum coating was 9.9%, which was close to the macroscopic true value measured using the weighing method of 10.2%.

Funder

China Southern Power Grid Co., Ltd.

Publisher

MDPI AG

Subject

General Materials Science

Reference32 articles.

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